Multi Purpose Wireless Communication Antenna Design: Microstrip Antenna

Authors

  • Leah A. de Asis Assistant Professor Electrical Engineering, School of Engineering, YBN University

DOI:

https://doi.org/10.53469/jrse.2024.06(12).02

Keywords:

Band, Cost - effectiveness, WLAN, Multiband, Frequency

Abstract

This paper presents a comprehensive overview of microstrip antennas for wireless communication applications. Microstrip antennas have gained significant attention due to their compact size, low profile and ease of integration with modern electronic circuits. The design principles, configurations and performance characteristics of microstrip antennas were highlighting their suitability for various wireless communication systems such as Wi - Fi, Bluetooth, GPS and more. Additionally recent advancements and future trends in microstrip antenna technology are explored, providing insights into ongoing research efforts and potential directions for further improvement. Overall it serves as a valuable resource for researchers, engineers and practitioners interested in the development and deployment of microstrip antennas in wireless communication networks. They consist of a metal patch printed on a dielectric substrate with a ground plane on the opposite side. They offer advantages such as cost - effectiveness, lightweight construction and good performance characteristics. Furthermore recent advancements in microstrip antenna technology such as metamaterial - enhanced designs and multiband operation are explored. The findings contribute to the understanding of microstrip antenna behavior and provide valuable insights for improving wireless communication system performance. We may adjust the frequency accordingly as per our needs. It operates in four bands in proposed design i. e.4.6Ghz, to 5GHz, 5.2 GHz to 5.5GHz, 5.6 GHz to 6.2GHz and 6.5Ghz to 8.9GHz. The proposed design may be suitable for multiple wireless connectivity or communication protocols such as WLAN, WiMAX, X - Band application.

References

Libin Sun, Yue Li, Zhijun Zhang. " Wideband Dual Polarized Endfire antenna based on compact open ended cavity for 50 Mm Wave Mobile Phones, " IEEE Transaction on antenna and propagation, Vol 70, no 3, pp.1632 - 1642, March 2022

Inzamam Ahmad, Sadiq Ullah, Adnan Ghaffar Mohammad Alibakh shikenari, Salahuddin Khan and Ernesto Limiti, " Design and Analysis of a Photonic Crystal Based Planar Antenna for THz Applications, " Electronics 2021, 10, https: //doi. org/10.3390/electronics10161941.

Neng - Wa, Zhong - Xun Liu Zhi - Ya Zhang Guang Fu, "Frequency - Ratio Reduction of a Low Profile Dual Circular Polarized Patch Antenna Under Triple Resonance", IEEE Antennas and Wireless Propagation Letters, Volume: 19, issue 10. pp.1689 - 1693 Oct.2020.

SaiRadavaram, Maria Pour, " Wideband Radiation Reconfigurable Microstrip Patch Antenna Loaded With Two Inverted U Slot", IEEE Transactions on Antenna and Propogation, Volume 67 Issue 3, pp 1501 - 1508 March 2019

Joysmita Chatterjee, Akhilesh Mohan and Vivek Dixit, " Broadband Circular Polarized H - Shaped Patch Antenna Using Reactive Impedance Surface", IEEE Antenna and wireless propagation letters, Volume 17, Issue: 4 pp.625 628 April 2018

Hang Wong Kwok Kan So, Xia Gao, " Bandwidth Enhancement of a monopolar patch antenna with V - shaped slot for car to car and WLAN communication", IEEE Transaction on Vehicular Technology, Vol 2016, pp 01 - 07 2016.

J - 5 Hong, EP. McErlean, and B. Karyamapudi, "Eighteen - pole superconducting CQ filter for future wireless applications", IEE Proc Microwave Antennas Propagate 153 (2006), 205 - 211.

Mabrukt "Characteristics Modes Alysis of a clen of Lampernal Design Tenedor Probe - Frd, 1 - skя Місльнепр Patchmate os area andpropuption, volume toue 2016/doi 10.1109 TAP 2016 - 2556701

feves Wiripand, Gong. Hull, Kankan. Pan and Jenter I Bemburi, "Analyus and Design of Broad Hand single layer Rachananactions on antennas and propagation, vol.51, no.3, manch 2003

Y., "A Minna Pach Assing Novel Photonic Bandgap Stractures, Maxnwave J Vol.41. Jun 1992, 0966 - 76

CA Bulan "Antenna Theory, Analynn and Desips New York, 1997 John Wiley & Sons

G. F. Khodes, Nour, and C. Coba "A practical minuturiand U - shot panchantenna with enhanced bandwidth, Progress in Electates Research B. Vol.1, 47 - 62, 2008

M. Kon M. Golpour - shaped micnstrip pach antenna with novel parasitictuning stubes for ulta wideband applications, IET Marow Austentas Propag., vol.4, το 7, pp.938.946, 2010.

Can. YF A Multi Band Skor Amma for GPS WIMAX WLAN Systems Antennas And Propagaion IEEE Transactions on Volume: 63, sau 3 Publication Year 2015, Pants): 952 - 958

Sandira Contanus and Antonio Contato, "Modified - skar panch antenna with reducedcrono - polarizat IEEE Antennas Propag. Mag, vol.57, so 3, pp.71 - 80 June 2015

JAA and B. R. Ram, "Analysis of Bad - Band D - Slot Microstrip Patch Amena, "Macrowave and Optical Tachanlogy Letters, vol.50, s.4, pp.15691073, April 2008

Can, YF "A Malti Band Skot Anema for GPS WIMAX WLAN Systems Antennas And Propagation, IEEE Transaction Volume 63, 3, pp.952 95 2015

U Cakraborty, "Compact Dual Band Minang Amen for IEEE 802 11 WLAN Application EEE Antemas and Wireless Propagations Letters, Vol.13, 2014, 487

Fin K. Karat Mark Berg Se & Peter de Mangt, "Wearable Cecularly Polarized Atema for Prernal Satellite Conmmunication and Navigation", IEEE Transactions on Antennas and Propagation, Volume 19 e 12. Des 2011

A. K. Takond, K. F. Lat. and K. M Lak. "Des of small size wadehard microstrip - puach antennas SFER Arte Progn Mag 411, pp 75 83, Fch 2003

A Dekhand Kumar, "Half Uht buded rectangular microstrip amienna", a ILEE AP - S int Symy USNCONCR Seamer Morting, vol 2, 2003, pp.876879

Downloads

Published

2024-12-26

How to Cite

Asis, L. A. de. (2024). Multi Purpose Wireless Communication Antenna Design: Microstrip Antenna. Journal of Research in Science and Engineering, 6(12), 8–12. https://doi.org/10.53469/jrse.2024.06(12).02